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Correlation of viscosimetry and practical tests of fresh cement paste consistency

机译:新鲜水泥浆料稠度粘液法和实际试验的相关性

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The paper presents numerical modeling of fresh cement pastes correlated with viscosimetry measurements. Laboratory mini slump-flow tests are performed with three pastes of different fluidity. The mixtures are varying in water to cement ratio and amount of admixtures used. Static and dynamic viscosity examination using a rotational rheometer is performed in order to obtain material parameters of the Herschel-Bulkley model. Three material models are derived from different cycles of rheometer flow curves and fitted for every paste. The numerical simulation is performed with the computational fluid dynamics (CFD) package in ANSYS Fluent. The 2D axisymmetrical Volume of Fluid (VOF) with two variants of the model is prepared. The first variant is considering an instantaneous demoulding, which leads to overestimation of the final slump spread. The second variant considered mold lifting as a part of the simulation. The final spread is decreased compared to the variant with instantaneous demoulding. However, no model yields a satisfying agreement with experimental data. More complex models able to capture thixotropic behavior would be more appropriate for the tested cases.
机译:本文介绍了与粘液测量相关的新水泥浆料的数值建模。实验室迷你坍落度测试用三种不同的流动性进行。混合物在水中变化到水泥比和使用的混合物的量。使用旋转流变仪进行静态和动态粘度检查,以获得Herschel-Bulkley模型的材料参数。三种材料模型来自流量计流曲线的不同循环,并为每个粘贴装配。使用ANSYS流畅的计算流体动力学(CFD)包进行数值模拟。制备具有两个模型变体的2D轴对称体积(VOF)。第一变体正在考虑瞬时脱模,这导致过度估计最终的坍落度。第二种变型认为模具提升作为模拟的一部分。与具有瞬时脱模的变体相比,最终扩散减少。然而,没有模型产生满意的同意实验数据。更复杂的模型能够捕获触变性行为将更适合测试的情况。

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